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Gauge/gravity correspondence in accelerating universe

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arxiv hep-th/0203041 v3 pith:3CN5NDZ3 submitted 2002-03-06 hep-th

classification hep-th
keywords gaugetheoryacceleratingdualsgravitysitterspace-timesupergravity
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We discuss time-dependent backgrounds of type IIB supergravity realizing gravitation duals of gauge theories formulated in de Sitter space-time as a tool of embedding de Sitter in a supergravity. We show that only the gravitational duals to non-conformal gauge theories are sensitive to a specific value of a Hubble parameter. We consider two nontrivial solutions of this type: a gravity dual to six-dimensional (1,1) little string theory, and to a four-dimensional cascading SU(N+M)xSU(N) supersymmetric gauge theory (related to fractional D3-branes on a singular conifold according to Klebanov et al), in accelerating universe. In both cases we argue that the IR singularity of the geometry is regulated by the expansion of the gauge theory background space-time.

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Cited by 2 Pith papers

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    Computes inflationary bispectra and trispectra from tree-level unparticle exchanges using Mellin-Barnes methods and symmetry-based differential equations, revealing that full shapes are needed to distinguish unparticl...

  2. Little String Theories on Curved Manifolds

    hep-th 2019-08 conditional novelty 7.0 of 10

    Little string theory cannot be put on negatively curved spacetimes, only on flat or positively curved ones, and on spheres its Hagedorn spectrum receives a universal classical correction.

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